US11060412B2 - Method for controlling a gap minimization of a gas turbine - Google Patents
Method for controlling a gap minimization of a gas turbine Download PDFInfo
- Publication number
- US11060412B2 US11060412B2 US16/976,257 US201916976257A US11060412B2 US 11060412 B2 US11060412 B2 US 11060412B2 US 201916976257 A US201916976257 A US 201916976257A US 11060412 B2 US11060412 B2 US 11060412B2
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- US
- United States
- Prior art keywords
- gap
- gas turbine
- maximum value
- value
- operating parameter
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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Links
- 238000000034 method Methods 0.000 title claims abstract description 34
- 238000004088 simulation Methods 0.000 claims abstract description 13
- 230000007704 transition Effects 0.000 claims description 14
- 230000004913 activation Effects 0.000 claims description 13
- 230000009849 deactivation Effects 0.000 claims description 5
- 238000005259 measurement Methods 0.000 description 5
- 230000008859 change Effects 0.000 description 4
- 230000001276 controlling effect Effects 0.000 description 4
- 238000005457 optimization Methods 0.000 description 4
- 238000004458 analytical method Methods 0.000 description 3
- 230000004888 barrier function Effects 0.000 description 3
- 230000008901 benefit Effects 0.000 description 3
- 230000001052 transient effect Effects 0.000 description 3
- 238000004364 calculation method Methods 0.000 description 2
- 238000005094 computer simulation Methods 0.000 description 2
- 230000001419 dependent effect Effects 0.000 description 2
- 230000009467 reduction Effects 0.000 description 2
- 230000003213 activating effect Effects 0.000 description 1
- 230000006978 adaptation Effects 0.000 description 1
- 230000002596 correlated effect Effects 0.000 description 1
- 238000001514 detection method Methods 0.000 description 1
- 238000011161 development Methods 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 239000003344 environmental pollutant Substances 0.000 description 1
- 238000011156 evaluation Methods 0.000 description 1
- 230000007246 mechanism Effects 0.000 description 1
- 238000012544 monitoring process Methods 0.000 description 1
- 231100000719 pollutant Toxicity 0.000 description 1
- 230000008092 positive effect Effects 0.000 description 1
- 230000035484 reaction time Effects 0.000 description 1
- 230000001105 regulatory effect Effects 0.000 description 1
- 229910001285 shape-memory alloy Inorganic materials 0.000 description 1
- 230000003068 static effect Effects 0.000 description 1
- 230000002123 temporal effect Effects 0.000 description 1
Images
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F01—MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
- F01D—NON-POSITIVE DISPLACEMENT MACHINES OR ENGINES, e.g. STEAM TURBINES
- F01D11/00—Preventing or minimising internal leakage of working-fluid, e.g. between stages
- F01D11/08—Preventing or minimising internal leakage of working-fluid, e.g. between stages for sealing space between rotor blade tips and stator
- F01D11/14—Adjusting or regulating tip-clearance, i.e. distance between rotor-blade tips and stator casing
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F01—MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
- F01D—NON-POSITIVE DISPLACEMENT MACHINES OR ENGINES, e.g. STEAM TURBINES
- F01D11/00—Preventing or minimising internal leakage of working-fluid, e.g. between stages
- F01D11/08—Preventing or minimising internal leakage of working-fluid, e.g. between stages for sealing space between rotor blade tips and stator
- F01D11/14—Adjusting or regulating tip-clearance, i.e. distance between rotor-blade tips and stator casing
- F01D11/20—Actively adjusting tip-clearance
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F01—MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
- F01D—NON-POSITIVE DISPLACEMENT MACHINES OR ENGINES, e.g. STEAM TURBINES
- F01D25/00—Component parts, details, or accessories, not provided for in, or of interest apart from, other groups
- F01D25/08—Cooling; Heating; Heat-insulation
- F01D25/14—Casings modified therefor
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F01—MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
- F01D—NON-POSITIVE DISPLACEMENT MACHINES OR ENGINES, e.g. STEAM TURBINES
- F01D17/00—Regulating or controlling by varying flow
- F01D17/02—Arrangement of sensing elements
- F01D17/04—Arrangement of sensing elements responsive to load
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F05—INDEXING SCHEMES RELATING TO ENGINES OR PUMPS IN VARIOUS SUBCLASSES OF CLASSES F01-F04
- F05D—INDEXING SCHEME FOR ASPECTS RELATING TO NON-POSITIVE-DISPLACEMENT MACHINES OR ENGINES, GAS-TURBINES OR JET-PROPULSION PLANTS
- F05D2270/00—Control
- F05D2270/30—Control parameters, e.g. input parameters
- F05D2270/305—Tolerances
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F05—INDEXING SCHEMES RELATING TO ENGINES OR PUMPS IN VARIOUS SUBCLASSES OF CLASSES F01-F04
- F05D—INDEXING SCHEME FOR ASPECTS RELATING TO NON-POSITIVE-DISPLACEMENT MACHINES OR ENGINES, GAS-TURBINES OR JET-PROPULSION PLANTS
- F05D2270/00—Control
- F05D2270/30—Control parameters, e.g. input parameters
- F05D2270/335—Output power or torque
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F05—INDEXING SCHEMES RELATING TO ENGINES OR PUMPS IN VARIOUS SUBCLASSES OF CLASSES F01-F04
- F05D—INDEXING SCHEME FOR ASPECTS RELATING TO NON-POSITIVE-DISPLACEMENT MACHINES OR ENGINES, GAS-TURBINES OR JET-PROPULSION PLANTS
- F05D2270/00—Control
- F05D2270/80—Devices generating input signals, e.g. transducers, sensors, cameras or strain gauges
Definitions
- the invention relates to a method for controlling a gap minimization of an adjustable gap between a rotor and a housing of a gas turbine, wherein the gas turbine comprises a gap-adjusting device, in particular a hydraulic gap-adjusting device.
- the invention relates further to a control device for carrying out the method and to a gas turbine having such a control device.
- a control device for carrying out the method comprising a gap-adjusting device, in particular a hydraulic gap-adjusting device, and means for determining the actual value of the operating parameter.
- the means for determining the actual value of the operating parameter can be sensors for a direct measurement or alternatively a different value correlated with the operating parameter can be measured directly and the operating parameter can be determined indirectly on the basis thereof by computation.
- the correlation between the limit value and the maximum value is predefined.
- the relationship maximum value and the limit value is specified in particular in the form of a table. This is wholly sufficient for the application, and is very reliable and controllable. Accordingly, it is simply necessary to know the maximum value of the operating parameter in order to determine the limit value quickly and without great computational effort.
- a correlation between the limit value and the maximum value is advantageously predefined for each stage. The respective correlations are recorded in the table.
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Control Of Turbines (AREA)
- Turbine Rotor Nozzle Sealing (AREA)
Abstract
Description
Claims (13)
Applications Claiming Priority (6)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE102018203896.1 | 2018-03-14 | ||
| DE102018203896 | 2018-03-14 | ||
| EP18176962 | 2018-06-11 | ||
| EP18176962.1 | 2018-06-11 | ||
| EP18176962.1A EP3540182A1 (en) | 2018-03-14 | 2018-06-11 | Method for controlling a clearance minimisation of a gas turbine |
| PCT/EP2019/055994 WO2019175091A1 (en) | 2018-03-14 | 2019-03-11 | Method for controlling a gap minimization of a gas turbine |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| US20210003027A1 US20210003027A1 (en) | 2021-01-07 |
| US11060412B2 true US11060412B2 (en) | 2021-07-13 |
Family
ID=62599468
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US16/976,257 Active US11060412B2 (en) | 2018-03-14 | 2019-03-11 | Method for controlling a gap minimization of a gas turbine |
Country Status (5)
| Country | Link |
|---|---|
| US (1) | US11060412B2 (en) |
| EP (2) | EP3540182A1 (en) |
| JP (1) | JP6861325B2 (en) |
| CN (1) | CN111836947B (en) |
| WO (1) | WO2019175091A1 (en) |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| EP4119775A1 (en) * | 2021-07-15 | 2023-01-18 | Pratt & Whitney Canada Corp. | Active clearance control system and method for an aircraft engine |
| US12123308B2 (en) | 2022-03-23 | 2024-10-22 | General Electric Company | Clearance control system for a gas turbine engine |
Families Citing this family (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| KR102482651B1 (en) * | 2019-10-14 | 2022-12-29 | 주식회사 케이티 | Device, method and computer program for operating simulation based on digital twin service |
| CN113250759A (en) * | 2021-04-30 | 2021-08-13 | 上海慕帆动力科技有限公司 | TRT clearance governing system |
| CN115169048A (en) * | 2022-07-22 | 2022-10-11 | 东南大学溧阳研究院 | Heavy gas turbine modeling method based on multi-field component modeling |
Citations (12)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US4069662A (en) * | 1975-12-05 | 1978-01-24 | United Technologies Corporation | Clearance control for gas turbine engine |
| US4230436A (en) * | 1978-07-17 | 1980-10-28 | General Electric Company | Rotor/shroud clearance control system |
| US20080267769A1 (en) * | 2004-12-29 | 2008-10-30 | United Technologies Corporation | Gas turbine engine blade tip clearance apparatus and method |
| US20090003991A1 (en) | 2007-06-26 | 2009-01-01 | General Electric Company | System and method for turbine engine clearance control with rub detection |
| EP2236771A2 (en) | 2009-03-25 | 2010-10-06 | General Electric Company | Method and apparatus for clearance control |
| US8296037B2 (en) * | 2008-06-20 | 2012-10-23 | General Electric Company | Method, system, and apparatus for reducing a turbine clearance |
| US8342798B2 (en) * | 2009-07-28 | 2013-01-01 | General Electric Company | System and method for clearance control in a rotary machine |
| EP2549065A1 (en) | 2011-07-18 | 2013-01-23 | General Electric Company | System and method for operating a turbine |
| WO2014016153A1 (en) | 2012-07-25 | 2014-01-30 | Siemens Aktiengesellschaft | Method for minimizing the gap between a rotor and a housing |
| EP2843198A1 (en) | 2013-08-29 | 2015-03-04 | Rolls-Royce plc | Method and control system for active rotor tip control clearance |
| WO2015128193A1 (en) | 2014-02-25 | 2015-09-03 | Siemens Aktiengesellschaft | Method for the operation of a gas turbine by active hydraulic gap adjustment |
| US20170292399A1 (en) * | 2016-04-12 | 2017-10-12 | United Technologies Corporation | Active clearance control for a turbine and case |
Family Cites Families (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US8126628B2 (en) * | 2007-08-03 | 2012-02-28 | General Electric Company | Aircraft gas turbine engine blade tip clearance control |
| US9758252B2 (en) * | 2012-08-23 | 2017-09-12 | General Electric Company | Method, system, and apparatus for reducing a turbine clearance |
-
2018
- 2018-06-11 EP EP18176962.1A patent/EP3540182A1/en not_active Withdrawn
-
2019
- 2019-03-11 CN CN201980018689.1A patent/CN111836947B/en active Active
- 2019-03-11 EP EP19714116.1A patent/EP3704354B1/en active Active
- 2019-03-11 US US16/976,257 patent/US11060412B2/en active Active
- 2019-03-11 WO PCT/EP2019/055994 patent/WO2019175091A1/en not_active Ceased
- 2019-03-11 JP JP2020538123A patent/JP6861325B2/en active Active
Patent Citations (12)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US4069662A (en) * | 1975-12-05 | 1978-01-24 | United Technologies Corporation | Clearance control for gas turbine engine |
| US4230436A (en) * | 1978-07-17 | 1980-10-28 | General Electric Company | Rotor/shroud clearance control system |
| US20080267769A1 (en) * | 2004-12-29 | 2008-10-30 | United Technologies Corporation | Gas turbine engine blade tip clearance apparatus and method |
| US20090003991A1 (en) | 2007-06-26 | 2009-01-01 | General Electric Company | System and method for turbine engine clearance control with rub detection |
| US8296037B2 (en) * | 2008-06-20 | 2012-10-23 | General Electric Company | Method, system, and apparatus for reducing a turbine clearance |
| EP2236771A2 (en) | 2009-03-25 | 2010-10-06 | General Electric Company | Method and apparatus for clearance control |
| US8342798B2 (en) * | 2009-07-28 | 2013-01-01 | General Electric Company | System and method for clearance control in a rotary machine |
| EP2549065A1 (en) | 2011-07-18 | 2013-01-23 | General Electric Company | System and method for operating a turbine |
| WO2014016153A1 (en) | 2012-07-25 | 2014-01-30 | Siemens Aktiengesellschaft | Method for minimizing the gap between a rotor and a housing |
| EP2843198A1 (en) | 2013-08-29 | 2015-03-04 | Rolls-Royce plc | Method and control system for active rotor tip control clearance |
| WO2015128193A1 (en) | 2014-02-25 | 2015-09-03 | Siemens Aktiengesellschaft | Method for the operation of a gas turbine by active hydraulic gap adjustment |
| US20170292399A1 (en) * | 2016-04-12 | 2017-10-12 | United Technologies Corporation | Active clearance control for a turbine and case |
Non-Patent Citations (1)
| Title |
|---|
| PCT International Search Report and Written Opinion of International Searching Authority dated Jul. 2, 2019 corresponding to PCT International Application No. PCT/EP2019/055994 filed Mar. 11, 2019. |
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| EP4119775A1 (en) * | 2021-07-15 | 2023-01-18 | Pratt & Whitney Canada Corp. | Active clearance control system and method for an aircraft engine |
| US11655725B2 (en) | 2021-07-15 | 2023-05-23 | Pratt & Whitney Canada Corp. | Active clearance control system and method for an aircraft engine |
| US12123308B2 (en) | 2022-03-23 | 2024-10-22 | General Electric Company | Clearance control system for a gas turbine engine |
Also Published As
| Publication number | Publication date |
|---|---|
| JP6861325B2 (en) | 2021-04-21 |
| US20210003027A1 (en) | 2021-01-07 |
| WO2019175091A1 (en) | 2019-09-19 |
| CN111836947A (en) | 2020-10-27 |
| EP3540182A1 (en) | 2019-09-18 |
| JP2021507176A (en) | 2021-02-22 |
| CN111836947B (en) | 2022-10-28 |
| EP3704354B1 (en) | 2022-06-08 |
| EP3704354A1 (en) | 2020-09-09 |
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Owner name: SIEMENS AKTIENGESELLSCHAFT, GERMANY Free format text: ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNORS:GAMM, HANS-GEORG;HUENING, MARCUS;KAHLSTORF, UWE;SIGNING DATES FROM 20200622 TO 20200626;REEL/FRAME:053616/0311 |
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